Energy-efficient storage in virtual machine environments

Lei Ye, Gen Lu, Sushanth Kumar, C. Gniady, J. Hartman
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引用次数: 19

Abstract

Current trends in increasing storage capacity and virtualization of resources combined with the need for energy efficiency put a challenging task in front of system designers. Previous studies have suggested many approaches to reduce hard disk energy dissipation in native OS environments; however, those mechanisms do not perform well in virtual machine environments because a virtual machine (VM) and the virtual machine monitor (VMM) that runs it have different semantic contexts. This paper explores the disk I/O activities between VMM and VMs using trace driven simulation to understand the I/O behavior of the VM system. Subsequently, this paper proposes three mechanisms to address the isolation between VMM and VMs, and increase the burstiness of hard disk accesses to increase energy efficiency of a hard disk. Compared to standard shutdown mechanisms, with eight VMs the proposed mechanisms reduce disk spin-ups, increase the disk sleep time, and reduce energy consumption by 14.8% with only 0.5% increase in execution time. We implemented the proposed mechanisms in Xen and validated our simulation results.
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虚拟机环境中的节能存储
当前增加存储容量和资源虚拟化的趋势,以及对能源效率的需求,给系统设计人员带来了一项具有挑战性的任务。以前的研究已经提出了许多方法来减少本地操作系统环境中的硬盘能量消耗;但是,这些机制在虚拟机环境中不能很好地执行,因为虚拟机(VM)和运行它的虚拟机监视器(VMM)具有不同的语义上下文。本文使用跟踪驱动模拟来研究VMM和VM之间的磁盘I/O活动,以了解VM系统的I/O行为。随后,本文提出了三种机制来解决VMM和vm之间的隔离,并增加硬盘访问的突发性,以提高硬盘的能源效率。与标准的关闭机制相比,对于8个vm,建议的机制减少了磁盘旋转,增加了磁盘睡眠时间,并且在执行时间仅增加0.5%的情况下减少了14.8%的能耗。我们在Xen中实现了所提出的机制,并验证了仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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